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Thermal Stress Triggers Broad Pocillopora damicornis Transcriptomic Remodeling while Vibrio coralliilyticus Infection Induces a More Targeted Immuno-Suppression Response

机译:热应激引发宽泛拟青霉转录组的重塑而珊瑚溶纤菌感染则引起更具针对性的免疫抑制反应。

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摘要

Global change and its associated temperature increase has directly or indirectly changed the distributions of hosts and pathogens, and has affected host immunity, pathogen virulence and growth rates. This has resulted in increased disease in natural plant and animal populations worldwide, including scleractinian corals. While the effects of temperature increase on immunity and pathogen virulence have been clearly identified, their interaction, synergy and relative weight during pathogenesis remain poorly documented. We investigated these phenomena in the interaction between the coral Pocillopora damicornis and the bacterium Vibrio coralliilyticus, for which the infection process is temperature-dependent. We developed an experimental model that enabled unraveling the effects of thermal stress, and virulence vs. non-virulence of the bacterium. The physiological impacts of various treatments were quantified at the transcriptome level using a combination of RNA sequencing and targeted approaches. The results showed that thermal stress triggered a general weakening of the coral, making it more prone to infection, non-virulent bacterium induced an ‘efficient’ immune response, whereas virulent bacterium caused immuno-suppression in its host.
机译:全球变化及其相关的温度升高直接或间接改变了宿主和病原体的分布,并影响了宿主的免疫力,病原体毒力和生长速度。这导致全世界范围内天然植物和动物种群(包括巩膜珊瑚)的疾病增加。虽然温度升高对免疫力和病原体毒力的影响已得到明确确认,但在发病过程中它们之间的相互作用,协同作用和相对重量仍然很少记录。我们调查了珊瑚小cil菌和细菌弧菌弧菌之间的相互作用中的这些现象,其感染过程与温度有关。我们开发了一个实验模型,该模型可以揭示细菌的热应激以及毒力与非毒力的关系。使用RNA测序和靶向方法相结合,可以在转录组水平上量化各种治疗方法的生理影响。结果表明,热应激引发了珊瑚的全面弱化,使其更容易受到感染,无毒细菌诱导了“有效的”免疫反应,而有毒细菌引起了宿主的免疫抑制。

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